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Thermal, Pressure and Light Induced Spin Transition in the Two-Dimensional Coordination Polymer [Fe(pmd)2[Cu(CN)2]2]

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Thermal, Pressure and Light Induced Spin Transition in the Two-Dimensional Coordination Polymer [Fe(pmd)2[Cu(CN)2]2]

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Agustí, G.; Thompson, AL.; Gaspar, AB.; Muñoz Roca, MDC.; Goeta, AE.; Rodríguez-Velamazán, JA.; Castro, M.... (2008). Thermal, Pressure and Light Induced Spin Transition in the Two-Dimensional Coordination Polymer [Fe(pmd)2[Cu(CN)2]2]. Dalton Transactions. (5):642-649. https://doi.org/10.1039/b711834a

Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10251/138970

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Título: Thermal, Pressure and Light Induced Spin Transition in the Two-Dimensional Coordination Polymer [Fe(pmd)2[Cu(CN)2]2]
Autor: Agustí, G. Thompson, A. L. Gaspar, A. B. Muñoz Roca, María Del Carmen Goeta, A. E. Rodríguez-Velamazán, J. A. Castro, M. Burriel, R. Real, J. A.
Entidad UPV: Universitat Politècnica de València. Departamento de Física Aplicada - Departament de Física Aplicada
Fecha difusión:
Resumen:
[EN] A complete structural, calorimetric, and magnetic characterisation of the 2D coordination spin crossover polymer {Fe(pmd)(2)[Cu(CN)(2)](2)} is reported. The crystal structure has been investigated below room temperature ...[+]
Derechos de uso: Cerrado
Fuente:
Dalton Transactions. (issn: 1477-9226 )
DOI: 10.1039/b711834a
Editorial:
The Royal Society of Chemistry
Versión del editor: https://doi.org/10.1039/b711834a
Código del Proyecto:
info:eu-repo/grantAgreement/MEC//CTQ2004-03456/ES/TRANSICION DE ESPIN EN MATERIALES MAGNETICOS FUNCIONALES DE BASE MOLECULAR/
info:eu-repo/grantAgreement/EC/FP6/515767/EU/Molecular approach to nanomagnets and multifunctional materials/MAGMANET/
info:eu-repo/grantAgreement/MEC//MAT2004-03395-C02-02/ES/ESTUDIO TERMOMAGNETICO DE MATERIALES MULTIFUNCIONALES: MAGNETISMO MOLECULAR, FOTOMAGNETISMO Y EFECTO MAGNETOCALORICO GIGANTE/
info:eu-repo/grantAgreement/GVA//ACOMP%2F2007%2F110/
Agradecimientos:
Financial support is acknowledged from the Spanish MEC (CTQ 2004-03456 and MAT2004-03395-C02-02), the Generalitat Valenciana (research grant ACOMP/2007/110) and MAGMANet Network of Excellence of the European Union (Contract ...[+]
Tipo: Artículo

References

Goodwin, H. A. (1976). Spin Transitions in six-coordinate iron(II) complexes. Coordination Chemistry Reviews, 18(3), 293-325. doi:10.1016/s0010-8545(00)80430-0

Gütlich, P. (s. f.). Spin crossover in iron(II)-complexes. Metal Complexes, 83-195. doi:10.1007/bfb0111269

Real, J. A., Gaspar, A. B., & Muñoz, M. C. (2005). Thermal, pressure and light switchable spin-crossover materials. Dalton Transactions, (12), 2062. doi:10.1039/b501491c [+]
Goodwin, H. A. (1976). Spin Transitions in six-coordinate iron(II) complexes. Coordination Chemistry Reviews, 18(3), 293-325. doi:10.1016/s0010-8545(00)80430-0

Gütlich, P. (s. f.). Spin crossover in iron(II)-complexes. Metal Complexes, 83-195. doi:10.1007/bfb0111269

Real, J. A., Gaspar, A. B., & Muñoz, M. C. (2005). Thermal, pressure and light switchable spin-crossover materials. Dalton Transactions, (12), 2062. doi:10.1039/b501491c

Bousseksou, A., Varret, F., Goiran, M., Boukheddaden, K., & Tuchagues, J. P. (2004). The Spin Crossover Phenomenon Under High Magnetic Field. Spin Crossover in Transition Metal Compounds III, 65-84. doi:10.1007/b95422

Hauser, A. (s. f.). Light-Induced Spin Crossover and the High-Spin→Low-Spin Relaxation. Spin Crossover in Transition Metal Compounds II, 155-198. doi:10.1007/b95416

Halder, G. J. (2002). Guest-Dependent Spin Crossover in a Nanoporous Molecular Framework Material. Science, 298(5599), 1762-1765. doi:10.1126/science.1075948

Real, J. A., Gaspar, A. B., Niel, V., & Muñoz, M. C. (2003). Communication between iron(II) building blocks in cooperative spin transition phenomena. Coordination Chemistry Reviews, 236(1-2), 121-141. doi:10.1016/s0010-8545(02)00220-5

Guionneau, P., Marchivie, M., Bravic, G., Létard, J.-F., & Chasseau, D. (s. f.). Structural Aspects of Spin Crossover. Example of the [FeIILn(NCS)2] Complexes. Spin Crossover in Transition Metal Compounds II, 97-128. doi:10.1007/b95414

Hostettler, M., Törnroos, K. W., Chernyshov, D., Vangdal, B., & Bürgi, H.-B. (2004). Challenges in Engineering Spin Crossover: Structures and Magnetic Properties of Six Alcohol Solvates of Iron(II) Tris(2-picolylamine) Dichloride. Angewandte Chemie International Edition, 43(35), 4589-4594. doi:10.1002/anie.200460736

T. Iwamoto , Inclusion Compounds, ed. J. L. Atwood, J. E. D. Davies and D. D. MacNicol, Oxford University Press, London, UK, 1991, vol. 5, 177

Kitazawa, T., Gomi, Y., Takahashi, M., Takeda, M., Enomoto, M., Miyazaki, A., & Enoki, T. (1996). Spin-crossover behaviour of the coordination polymer FeII(C5H5N)2NiII(CN)4. Journal of Materials Chemistry, 6(1), 119. doi:10.1039/jm9960600119

Niel, V., Martinez-Agudo, J. M., Muñoz, M. C., Gaspar, A. B., & Real, J. A. (2001). Cooperative Spin Crossover Behavior in Cyanide-Bridged Fe(II)−M(II) Bimetallic 3D Hofmann-like Networks (M = Ni, Pd, and Pt). Inorganic Chemistry, 40(16), 3838-3839. doi:10.1021/ic010259y

Bonhommeau, S., Molnár, G., Galet, A., Zwick, A., Real, J.-A., McGarvey, J. J., & Bousseksou, A. (2005). One Shot Laser Pulse Induced Reversible Spin Transition in the Spin-Crossover Complex [Fe(C4H4N2){Pt(CN)4}] at Room Temperature. Angewandte Chemie International Edition, 44(26), 4069-4073. doi:10.1002/anie.200500717

Cobo, S., Molnár, G., Real, J. A., & Bousseksou, A. (2006). Multilayer Sequential Assembly of Thin Films That Display Room-Temperature Spin Crossover with Hysteresis. Angewandte Chemie International Edition, 45(35), 5786-5789. doi:10.1002/anie.200601885

Niel, V., Galet, A., Gaspar, A. B., Muñoz, M. C., & Real, J. A. (2003). Cooperative thermal and optical switching of spin states in a new two-dimensional coordination polymer. Chem. Commun., (11), 1248-1249. doi:10.1039/b301806g

Niel, V., Thompson, A. L., Muñoz, M. C., Galet, A., Goeta, A. E., & Real, J. A. (2003). Crystalline-State Reaction with Allosteric Effect in Spin-Crossover, Interpenetrated Networks with Magnetic and Optical Bistability. Angewandte Chemie International Edition, 42(32), 3760-3763. doi:10.1002/anie.200351853

Galet, A., Niel, V., Muñoz, M. C., & Real, J. A. (2003). Synergy between Spin Crossover and Metallophilicity in Triple Interpenetrated 3D Nets with the NbO Structure Type. Journal of the American Chemical Society, 125(47), 14224-14225. doi:10.1021/ja0377347

Galet, A., Muñoz, M. C., Martínez, V., & Real, J. A. (2004). Supramolecular isomerism in spin crossover networks with aurophilic interactions. Chem. Commun., (20), 2268-2269. doi:10.1039/b409974e

Niel, V., Thompson, A. L., Goeta, A. E., Enachescu, C., Hauser, A., Galet, A., … Real, J. A. (2005). Thermal- and Photoinduced Spin-State Switching in an Unprecedented Three-Dimensional Bimetallic Coordination Polymer. Chemistry - A European Journal, 11(7), 2047-2060. doi:10.1002/chem.200400930

Galet, A., Gaspar, A. B., Muñoz, M. C., Bukin, G. V., Levchenko, G., & Real, J. A. (2005). Tunable Bistability in a Three-Dimensional Spin-Crossover Sensory- and Memory-Functional Material. Advanced Materials, 17(24), 2949-2953. doi:10.1002/adma.200501122

Galet, A., Muñoz, M. C., & Real, J. A. (2006). {Fe(3CNpy)2[Cu(3CNpy)(μ-CN)2]2}:  a One-Dimensional Cyanide-Based Spin-Crossover Coordination Polymer. Inorganic Chemistry, 45(12), 4583-4585. doi:10.1021/ic060247i

García, J., Bartolomé, J., Goṅzález, D., Navarro, R., & Fruchart, D. (1983). Thermophysical properties of intermetallic Mn3MC perovskites I. Heat capacity of manganese gallium carbide Mn3GaC. The Journal of Chemical Thermodynamics, 15(11), 1059-1069. doi:10.1016/0021-9614(83)90031-9

Létard, J.-F., Guionneau, P., & Goux-Capes, L. (s. f.). Towards Spin Crossover Applications. Spin Crossover in Transition Metal Compounds III, 221-249. doi:10.1007/b95429

Létard, J.-F., Capes, L., Chastanet, G., Moliner, N., Létard, S., Real, J.-A., & Kahn, O. (1999). Critical temperature of the LIESST effect in iron(II) spin crossover compounds. Chemical Physics Letters, 313(1-2), 115-120. doi:10.1016/s0009-2614(99)01036-2

Baran, M., Dyakonov, V., Gładczuk, L., Levchenko, G., Piechota, S., & Szymczak, H. (1995). Comparative study of the pressure effect on critical parameters of GdBa2Cu4O8 and YBa2Cu4O8. Physica C: Superconductivity, 241(3-4), 383-388. doi:10.1016/0921-4534(94)02359-x

Carvajal, M. A., Alvarez, S., & Novoa, J. J. (2004). The Nature of Intermolecular CuI⋅⋅⋅CuI Interactions: A Combined Theoretical and Structural Database Analysis. Chemistry - A European Journal, 10(9), 2117-2132. doi:10.1002/chem.200305249

Rodrı´guez-Velamazán, J. A., Castro, M., Palacios, E., Burriel, R., Sánchez Costa, J., & Létard, J. F. (2007). Calorimetric measurements of the light-induced metastable high-spin state on the [Fe(PM-BiA)2(NCS)2] complex. Chemical Physics Letters, 435(4-6), 358-363. doi:10.1016/j.cplett.2006.12.097

GUTLICH, P., KSENOFONTOV, V., & GASPAR, A. (2005). Pressure effect studies on spin crossover systems. Coordination Chemistry Reviews, 249(17-18), 1811-1829. doi:10.1016/j.ccr.2005.01.022

Ksenofontov, V., Gaspar, A. B., & Gütlich, P. (s. f.). Pressure Effect Studies on Spin Crossover and Valence Tautomeric Systems. Spin Crossover in Transition Metal Compounds III, 23-64. doi:10.1007/b95421

Usha, S., Srinivasan, R., & Rao, C. N. R. (1985). High-pressure magnetic susceptibility studies of spin-state transition in Fe(II) complexes. Chemical Physics, 100(3), 447-455. doi:10.1016/0301-0104(85)87069-5

Köhler, C. P., Jakobi, R., Meissner, E., Wiehl, L., Spiering, H., & Gütlich, P. (1990). Nature of the phase transition in spin crossover compounds. Journal of Physics and Chemistry of Solids, 51(3), 239-247. doi:10.1016/0022-3697(90)90052-h

Romstedt, H., Hauser, A., & Spiering, H. (1998). High-spin → low-spin relaxation in the two-step spincrossover compound [Fe(pic)3]Cl2EtOH (pic = 2-picolylamine). Journal of Physics and Chemistry of Solids, 59(2), 265-275. doi:10.1016/s0022-3697(97)00142-x

Adler, P., Wiehl, L., Meibner, E., Köhler, C. P., Spiering, H., & Gütlich, P. (1987). The influence of the lattice on the spin transition in solids. Investigations of the high spin ag low spin transition in mixed crystals of [FexM1−x(2−pic)3]C12·MeOH. Journal of Physics and Chemistry of Solids, 48(6), 517-525. doi:10.1016/0022-3697(87)90046-1

Ksenofontov, V., Spiering, H., Schreiner, A., Levchenko, G., Goodwin, H. ., & Gütlich, P. (1999). The influence of hydrostatic pressure on hysteresis phase transition in spin crossover compounds. Journal of Physics and Chemistry of Solids, 60(3), 393-399. doi:10.1016/s0022-3697(98)00259-5

Galet, A., Gaspar, A. B., Agusti, G., Muñoz, M. C., Levchenko, G., & Real, J. A. (2006). Pressure Effect Investigations on the Spin Crossover Systems{Fe[H2B(pz)2]2(bipy)} and {Fe[H2B(pz)2]2(phen)}. European Journal of Inorganic Chemistry, 2006(18), 3571-3573. doi:10.1002/ejic.200600517

Galet, A., Gaspar, A. B., Muñoz, M. C., Levchenko, G., & Real, J. A. (2006). Pressure Effect and Crystal Structure Reinvestigations on the Spin Crossover System:  [Fe(bt)2(NCS)2] (bt = 2,2‘-Bithiazoline) PolymorphsAandB. Inorganic Chemistry, 45(24), 9670-9679. doi:10.1021/ic060729u

Gallois, B., Real, J. A., Hauw, C., & Zarembowitch, J. (1990). Structural changes associated with the spin transition in bis(isothiocyanato)bis(1,10-phenanthroline)iron: a single-crystal x-ray investigation. Inorganic Chemistry, 29(6), 1152-1158. doi:10.1021/ic00331a009

Guionneau, P., Marchivie, M., Garcia, Y., Howard, J. A. K., & Chasseau, D. (2005). Spin crossover in[MnIII(pyrol)3tren]probed by high-pressure and low-temperature x-ray diffraction. Physical Review B, 72(21). doi:10.1103/physrevb.72.214408

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